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城市热岛效应的卫星遥感分析(英文) 被引量:3

An Assessment of Urban Heat Island Effect using Remote Sensing Data
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摘要 利用MODIS资料研究了2004年4月南京城市热岛特征及其影响因子,结合地表覆盖类型分析了植被归一化指数(Normalized Difference Vegetation Index,NDVI)、地表温度(Ts)、地表反照率(α)的城乡差异及其相互关系,探讨了城市热岛(Urban Heat Island,UHI)效应形成的机制。结果表明:南京城区存在着明显的城市热岛效应;城市平均Ts比乡村高约10.83%;城市NDVI和α分别比乡村低约为62%和18.75%;NDVI与Ts呈负相关,相关系数为-0.73,而NDVI与α之间关系与波段有关;城乡植被覆盖差异是造成UHI的主要原因,其次是地表反照率,通过提高植被覆盖率和地表反照率可以减小城市热岛效应。 Characteristics of urban heat island (UHI) effect and its cause are investigated by using MODIS data in April 2004. Surface parameters from the MODIS data have surface temperature (ts) albedo(α), and normalized difference vegetation index (NDVI). Their heterogeneities over urban and rural area are analyzed based on land cover classification, and their relations are also presented in order to explain the UHI effect. The results show that there exists obvious the UHI effect. Ts over urban areas are by 10.83 % higher than those over rural area, and NDVI and α over urban area are by 62 % and 18.75 % less than those over rural area, respectively. Surface temperature has significantly negative correlation with NDVI and their correlation coefficient is -0.73. Correlation between NDVI and albedo is determined by the spectrum of light. Difference in vegetation cover is the primary cause of the UHI effect.
出处 《Marine Science Bulletin》 CAS 2008年第2期14-25,共12页 海洋通报(英文版)
基金 the project of National Natural Science Funding of China under grant No.40075004.
关键词 卫星遥感 MODIS 城市热岛 地表温度 植被归一化指数 地表反照率 remote sensing MODIS urban heat isiand surface temperature NDVI albedo
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  • 1盛永伟,肖乾广.应用气象卫星识别薄云覆盖下的水体[J].环境遥感,1994,9(4):247-255. 被引量:36
  • 2周红妹,杨星卫,陆贤.NOAA气象卫星云检测方法的研究[J].环境遥感,1995,10(2):137-142. 被引量:25
  • 3孙奕敏.灾害性浓雾[M].北京:气象出版社,1994..
  • 4刘长盛.云的红外辐射特征[J].南京大学学报,1982,(2):540-549.
  • 5徐兴奎 田国良 等.应用遥感和GIS在地表特征模式中应用研究.遥感知识创新文集[M].北京:中国科学技术出版社,1999.85-94.
  • 6Gurka J J.Using Satellite Data for Forecasting Fog and Stratus Dissipation[R].5th Conference on Weather Forecasting and Analysis,1974:54-57.
  • 7Gurka J J,Oliver V J.Fog persistence under a cirrus band[J].Mon Wea Rev,1974,102(12):869-870.
  • 8Gurka J J.The role of inward mixing in the dissipation of fog and stratus[J].Mon Wea Rev,1978,106(11):1 633-1 635.
  • 9Gustafson A V,Wasserman S E.Use of satellite information in observing and forecasting fog dissipation and cloud formation[J].Mon Wea Rev,1976,104(3):323-324.
  • 10Eyre J R,Brownscombe J L,Allam R J.Detection of fog at night using Advanced Very High Resolution Radiometer(AVHRR) imagery[J].Meteorol Magazing,1984,113:266-271.

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